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制备并鉴定 96 孔微孔板表面的分子印迹聚合物,用于检测和生物相似性评估重组人红细胞生成素。

Preparation and characterization of 96-well microplates coated with molecularly imprinted polymer for determination and biosimilarity assessment of recombinant human erythropoietin.

机构信息

National Organization for Research and Control of Biologicals, Egypt.

Analytical Chemistry Department, Faculty of Pharmacy, Cairo University, Egypt; Bioanalysis Research Group, School of Pharmacy, Newgiza University, Egypt.

出版信息

J Chromatogr A. 2021 Mar 29;1641:462012. doi: 10.1016/j.chroma.2021.462012. Epub 2021 Feb 18.

Abstract

Synthesis and applications of molecularly imprinted polymers (MIP) are rapidly growing. In this study, a biomimetic MIP was prepared through silanes polymerization on the surface of 96-well microplates using recombinant human erythropoietin-alfa (rhEPO) as a template molecule. The rhEPO was immobilized onto the plate surface using bi-functional cross-linker and a thin imprinted layer following sol-gel procedure was constructed. After template extraction, uniform three-dimensional cavities compatible with the configuration of rhEPO were obtained. The rhEPO-MIP preparation was optimized using 2-level factorial design and response surface design where polymerization time and interactions between the different variable were found to be the most significant factors. Size-exclusion chromatography (SEC) was used to monitor the stability of the rhEPO under the investigated polymerization conditions. Determination of rhEPO using the MIP microplate showed good dynamic response fitting to the 4 PL regression model (0.9962) over a concentration range of 10.00 - 100.00 ng mL. Adsorption of rhEPO onto MIP followed the Langmuir isotherm model (r = 0.9957, χ =0.02786) with pseudo-second-order kinetics (r = 0.9984). The surface of the rhEPO-MIP was characterized using scanning electron microscopy (SEM) while step-by-step surface modification was tracked using Fourier transform infrared (FTIR) spectroscopy. The rhEPO-MIP was able to distinguish between the rhEPO-alfa template and modified rhEPO molecules; rhEPO-beta, hyperglycosylated and pegylated forms (imprinting factors < 2) and in the commonly used formulation additive human serum albumin (HSA) (R% = 113.96 -95.22%). The rhEPO-MIP was applied to compare the receptor-binding pattern to rhEPO and its biosimilars / structural analogues. The results were cross-validated using the conventional assay protocol (RP-HPLC and ELISA) and an acceptable correlation was observed with RP-HPLC (maximum deviation is 7.78%). This work confirmed the applicability of rhEPO-MIP with its unique binding features for batch release, stability and biosimilarity assessment as well as subsequent evaluation of batch-to-batch consistency during bioproduction of target analytes.

摘要

分子印迹聚合物(MIP)的合成与应用正在迅速发展。本研究通过在 96 孔微板表面的硅烷聚合,以重组人促红细胞生成素-α(rhEPO)为模板分子,制备了仿生 MIP。使用双官能交联剂将 rhEPO 固定在板表面上,然后通过溶胶-凝胶程序构建了薄的印迹层。模板提取后,得到了与 rhEPO 构型相匹配的均匀的三维空穴。使用 2 水平析因设计和响应面设计优化了 rhEPO-MIP 的制备,其中聚合时间和不同变量之间的相互作用被发现是最重要的因素。尺寸排阻色谱(SEC)用于监测 rhEPO 在研究聚合条件下的稳定性。使用 MIP 微板测定 rhEPO 显示出良好的动态响应,在 10.00-100.00ng mL 的浓度范围内拟合 4 PL 回归模型(0.9962)。rhEPO 吸附到 MIP 上遵循朗缪尔等温线模型(r=0.9957,χ=0.02786),具有拟二级动力学(r=0.9984)。使用扫描电子显微镜(SEM)对 rhEPO-MIP 的表面进行了表征,同时使用傅里叶变换红外(FTIR)光谱跟踪逐步的表面修饰。rhEPO-MIP 能够区分 rhEPO-alfa 模板和修饰的 rhEPO 分子;rhEPO-beta、高糖基化和聚乙二醇化形式(印迹因子<2)以及常用的制剂添加剂人血清白蛋白(HSA)(R%=113.96-95.22%)。rhEPO-MIP 用于比较与 rhEPO 及其生物类似物/结构类似物的受体结合模式。使用常规测定方案(RP-HPLC 和 ELISA)对结果进行了交叉验证,并与 RP-HPLC 观察到可接受的相关性(最大偏差为 7.78%)。这项工作证实了 rhEPO-MIP 的适用性,其独特的结合特性可用于批量放行、稳定性和生物相似性评估,以及目标分析物生物生产过程中批间一致性的后续评估。

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